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arXiv:1508.06964·v2·High Energy Physics — Phenomenology

The electron in three-dimensional momentum space

Alessandro Bacchetta🇮🇹 · Luca Mantovani🇮🇹 · Barbara Pasquini (Pavia U. and INFN, Pavia)🇮🇹

Abstract

We study the electron as a system composed by an electron and a photon, using lowest order perturbation theory. We derive the leading-twist transverse-momentum-dependent distribution functions for both the electron and photon in the dressed electron, thereby offering a three-dimensional description of the dressed electron in momentum space. To obtain the distribution functions, we apply both the formalism of light-front wave function overlap representation and the diagrammatic approach. We perform the calculations both in light-cone gauge and Feynman gauge, and we present a detailed discussion of the role of the Wilson lines to obtain gauge-independent results. We provide numerical results and plots for many of the computed distributions.

Comments: 25 pages, 14 figures

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